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甜菜碱染料激发态中溶剂化与电子结构之间强耦合的后果。

Consequences of strong coupling between solvation and electronic structure in the excited state of a betaine dye.

作者信息

Ishida Tateki, Rossky Peter J

机构信息

Department of Theoretical and Computational Molecular Science, Institute for Molecular Science, Myodaiji, Okazaki 444-8585, Japan.

出版信息

J Phys Chem B. 2008 Sep 11;112(36):11353-60. doi: 10.1021/jp801660b. Epub 2008 Aug 15.

Abstract

The electronic ground and excited-state structures of the betaine dye molecule pyridinium- N-phenoxide [4-(1-pyridinio)phenolate] are investigated both in the gas phase and in aqueous solution, using the reference interaction site model self-consistent-field (RISM-SCF) procedure within a CASSCF framework. We obtain the total free energy profiles in both the ground and excited states with respect to variation in the torsion angle between the phenoxide and pyridinium rings. We analyze the effect of solvent on the variation of the solute dipole moment and on the charge transfer character in the excited state. In the gas phase, it is shown that the potential energy profile in the excited-state decreases monotonically toward a perpendicular ring orientation and the dipole moment decreases along with decreasing charge localization. In water, the free energy surface for twisting is better characterized as nearly flat along the same coordinate for sterically accessible angles. These results are analyzed in terms of contributions of the solvation free energy, the solute electronic energy, and their coupling. Correspondingly, the dependence of the charge transfer character on solute geometry and solvation are analyzed, and the important roles in the excitation and subsequent relaxation processes for the betaine dye are discussed. It is found that there is considerable solute electronic reorganization associated with the evolution of solvation in the excited state, and it is suggested that this reorganization may contribute significantly to the early time evolution of transient spectra following photoexcitation.

摘要

采用CASSCF框架下的参考相互作用位点模型自洽场(RISM-SCF)方法,研究了气相和水溶液中甜菜碱染料分子吡啶鎓-N-苯氧化物[4-(1-吡啶鎓)苯酚盐]的电子基态和激发态结构。我们获得了基态和激发态下,相对于苯氧化物环和吡啶鎓环之间扭转角变化的总自由能曲线。我们分析了溶剂对溶质偶极矩变化以及激发态电荷转移特性的影响。在气相中,结果表明激发态的势能曲线朝着垂直环取向单调下降,并且偶极矩随着电荷定域化的降低而减小。在水中,对于空间可及角度,沿着相同坐标扭转的自由能面更接近平坦。从溶剂化自由能、溶质电子能量及其耦合的贡献方面对这些结果进行了分析。相应地,分析了电荷转移特性对溶质几何结构和溶剂化的依赖性,并讨论了甜菜碱染料在激发和随后弛豫过程中的重要作用。发现激发态下溶质电子结构的重排与溶剂化的演化密切相关,并且表明这种重排可能对光激发后瞬态光谱的早期演化有显著贡献。

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